Acta Optica Sinica, Volume. 39, Issue 12, 1223004(2019)
Fabrication and Characterization of Bioprobe with Mid-Infrared Light Channel
[7] Castonguay A, Thomas S, Lesage F et al[M]. Optogenetic tools for confined stimulation in deep brain structures, 1408, 267-279(2016).
[8] Perkins L N, Semu D, Shen J et al. High-density microfibers as a potential optical interface to reach deep brain regions[J]. Journal of Neural Engineering, 15, 066002(2018).
[14] Wang J L, Lin Y C, Young T H et al. Far-infrared ray radiation promotes neurite outgrowth of neuron-like PC12 cells through AKT1 signaling[J]. Journal of the Formosan Medical Association, 118, 600-610(2019).
[15] Chiang I, Pu Y, Young T. P-46-photomodulation and protective effects of far infrared irradiation to cultivation of renal poximal tubule cell[J]. European Urology Supplements, 17, e2546(2018).
[21] Garmire E. McMahon T, Bass M. Low-loss optical transmission through bent hollow metal waveguides[J]. Applied Physics Letters, 31, 92-94(1977).
[27] Matsuura Y, Saito M, Miyagi M et al. Loss characteristics of circular hollow waveguides for incoherent infrared light[J]. Journal of the Optical Society of America A, 6, 423-427(1989).
[29] Tang J F, Gu P F, Liu X et al[M]. Modern optical thin film technology(2006).
[34] Zhou B K, Gao Y Z, Chen T R et al[M]. The principle of laser(2009).
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Chuandi Peng, Junzhe Zheng, Xiaosong Zhu, Chao Chang, Yiwei Shi. Fabrication and Characterization of Bioprobe with Mid-Infrared Light Channel[J]. Acta Optica Sinica, 2019, 39(12): 1223004
Category: Optical Devices
Received: Jul. 2, 2019
Accepted: Aug. 8, 2019
Published Online: Dec. 6, 2019
The Author Email: Shi Yiwei (ywshi@fudan.edu.cn)